首页> 外文期刊>European journal of human genetics: EJHG >De novo BK channel variant causes epilepsy by affecting voltage gating but not Ca2+ sensitivity
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De novo BK channel variant causes epilepsy by affecting voltage gating but not Ca2+ sensitivity

机译:De Novo BK通道变体通过影响电压门控而不是CA2 +灵敏度导致癫痫

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Epilepsy is one of the most common neurological diseases and it causes profound morbidity and mortality. We identified the first de novo variant in KCNMA1 (c. 2984 A G (p.(N995S)))-encoding the BK channel-that causes epilepsy, but not paroxysmal dyskinesia, in two independent families. The c. 2984 A G (p.(N995S)) variant markedly increased the macroscopic potassium current by increasing both the channel open probability and channel open dwell time. The c. 2984 A G (p.(N995S)) variant did not affect the calcium sensitivity of the channel. We also identified three other variants of unknown significance (c. 1554 G T (p.(K518N)), c. 1967A C (p.(E656A)), and c. 3476 A G (p.(N1159S))) in three separate patients with divergent epileptic phenotypes. However, these variants did not affect the BK potassium current, and are therefore unlikely to be disease-causing. These results demonstrate that BK channel variants can cause epilepsy without paroxysmal dyskinesia. The underlying molecular mechanism can be increased activation of the BK channel by increased sensitivity to the voltage-dependent activation without affecting the sensitivity to the calcium-dependent activation. Our data suggest that the BK channel may represent a drug target for the treatment of epilepsy. Our data highlight the importance of functional electrophysiological studies of BK channel variants in distinguishing whether a genomic variant of unknown significance is a disease-causing variant or a benign variant.
机译:癫痫是最常见的神经疾病之一,它会引起深刻的发病率和死亡率。我们在KCNMA1中鉴定了第一次Novo变体(C.2984 A& G(p。(n995s))) - 编码BK信道 - 导致癫痫,但不是阵发性障碍,在两个独立的家庭中。 c。 2984 A> g(p。(n995s))变体通过增加通道开放概率和通道打开停留时间来显着增加宏观钾电流。 c。 2984 A> g(p。(n995s))变体没有影响通道的钙敏感性。我们还确定了三种未知意义的其他变体(c.1554g> t(p.(k518n)),c。1967a& c(p。(e656a))和c. 3476 a& g(p。 (N1159S)))在三个不同的发散癫痫表型患者中。然而,这些变体不会影响BK钾电流,因此不太可能是疾病导致的。这些结果表明,BK通道变体可以导致癫痫患者没有阵发性障碍症。通过对电压依赖性激活的敏感性增加,可以增加底层的分子机制,而不会影响对依赖钙的激活的敏感性的敏感性。我们的数据表明BK信道可以代表治疗癫痫的药物靶标。我们的数据突出了BK通道变体功能电生理学研究的重要性,以区分未知意义的基因组变体是一种疾病导致变种或良性变体。

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